The capacity for growth stimulation by TGFβ1 seen only in advanced colon cancers cannot be ascribed to mutations in APC, DCC, p53 or ras Journal Article


Authors: Huang, F.; Hsu, S.; Yan, Z.; Winawer, S.; Friedman, E.
Article Title: The capacity for growth stimulation by TGFβ1 seen only in advanced colon cancers cannot be ascribed to mutations in APC, DCC, p53 or ras
Abstract: Human colon cancer development is associated with the accumulation of mutations and deletions in the suppressor genes DCC, APC and p53 and mutations in the dominant oncogene K-ras, with loss of wild type alleles. In earlier studies we had observed that about half of the resected human colon cancers placed into primary culture were growth stimulated by TGFβ1. This group included the more advanced cancers which were either poorly differentiated primary-site cancers or metastases. In contract, the more differentiated colon cancers were inhibited or unaffected by TGFβ1, indicating that a switch in response to TGFβ1 occurs during colon cancer progression. Different sublines of the HT29 colon carcinoma cell line model the resected cancers, responding to TGFβ1 by proliferation, inhibition or no growth modulation. The current study shows that while the poorly differentiated, TGFβ1-stimulated sublines are most tumorigenic, all the sublines have the same spectrum of mutations: truncating mutations in both APC (adenomatous polyposis coli) alleles, no activated ras genes, mutated and thus overexpressed p53, and very low expression of DCC compared to normal colon cells. Genes other than the four already implicated in colon carcinoma evolution are responsible for the mitogenic response to TGFβ1 found in the more advanced cancers.
Keywords: controlled study; gene mutation; human cell; mutation; advanced cancer; cancer growth; mouse; cell division; transforming growth factor beta; animal experiment; colonic neoplasms; cancer cell culture; protein p53; animalia; cancer genetics; cancer inhibition; tumor suppressor gene; molecular sequence data; colon cancer; cell subpopulation; transforming growth factor beta1; base sequence; oncogene k ras; genes, ras; genes, tumor suppressor; genes, p53; colon carcinogenesis; carcinogenic activity; genes, apc; growth stimulation; human; male; priority journal; article; support, u.s. gov't, p.h.s.; genes, dcc
Journal Title: Oncogene
Volume: 9
Issue: 12
ISSN: 0950-9232
Publisher: Nature Publishing Group  
Date Published: 1994-12-01
Start Page: 3701
End Page: 3706
Language: English
PROVIDER: scopus
PUBMED: 7970729
DOI/URL:
Notes: Export Date: 14 January 2019 -- Article -- CODEN: ONCNE C2 -- Source: Scopus
Citation Impact
MSK Authors
  1. Sidney J Winawer
    274 Winawer
  2. Zhongfa Yan
    11 Yan